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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effects of the thermal and magnetic paths on first order martensite transition of disordered Ni45Mn44Sn9In2 Heusler alloy exhibiting a giant magnetocaloric effect and magnetoresistance near room temperature
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Effects of the thermal and magnetic paths on first order martensite transition of disordered Ni45Mn44Sn9In2 Heusler alloy exhibiting a giant magnetocaloric effect and magnetoresistance near room temperature

机译:磁力和磁路上的效果在无序Ni45mN444sn92的Heusler合金中表现出巨大的磁热效应和室温磁阻的影响

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摘要

The existence of a first order martensite transition in off-stoichiometric Ni45Mn44Sn9In2 ferromagnetic shape memory Hensler alloy has been clearly observed by thermal, magnetic, and magneto-transport measurements. Field and thermal path dependence of the change in large magnetic entropy and negative magnetoresistance are observed, which originate due to the sharp change in magnetization driven by metamagnetic transition from the weakly magnetic martensite phase to the ferromagnetic austenite phase in the vicinity of the martensite transition. The noticeable shift in the martensite transition with the application of a magnetic field is the most significant feature of the present study. This shift is due to the interplay of the austenite and martensite phase fraction in the alloy. The different aspects of the first order martensite transition, e.g. broadening of the martensite transition and the field induced arrest of the austenite phase are mainly related to the dynamics of coexisting phases in the vicinity of the martensite transition. The alloy also shows a second order ferromagnetic - paramagnetic transition near the Curie temperature of the austenite phase. A noticeably large change in magnetic entropy (Delta S-M = 24 J kg(-1) K-1 at 298K) and magnetoresistance (= -33% at 295 K) has been observed for the change in 5 and 8 T magnetic fields, respectively. The change in adiabatic temperature for the change in a magnetic field of 5 T is found to be -3.8 K at 299 K. The low cost of the ingredients and the large change in magnetic entropy very near to the room temperature makes Ni45Mn44Sn9In2 alloy a promising magnetic refrigerant for real technological application.
机译:通过热,磁性和磁传输测量清楚地观察到脱离化学计量的Ni45mN44Sn9in2铁磁形状存储器Hensler合金中的一阶马氏体过渡的存在。观察到大磁熵和负磁阻的变化的场和热路径依赖性,其源于由从弱磁马氏体相到马氏体转变附近的铁磁性奥氏体相对的磁化的急剧变化。 Martensite的显着变化与磁场的应用是本研究中最重要的特征。这种转变是由于合金中奥氏体和马氏体相级分的相互作用。第一阶马氏体转换的不同方面,例如,扩大马氏体过渡和奥氏体阶段的遗传诱导的抑制主要与马氏体转变附近的共存阶段的动态相关。该合金还显示了二阶铁磁 - &奥氏体相静脉温度附近的顺磁转变。对于5和8 T磁场的变化,已经观察到明显大的磁熵(ΔSm= 24jkg(-1)k-1处为298k)和磁阻(295 k)的磁阻(= -33%) 。将5T磁场变化的绝热温度的变化在299k时被发现为-3.8 k。成分的低成本和磁熵的大变化非常接近室温,使Ni45mn44sn9in2合金具有很有希望的用于实际技术应用的磁性制冷剂。

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